Manufacturer profile

ELECFREAKS

1 robot tracked on ui44 headquartered in China and published pricing around $190.

  • 1 active model
  • Research leads the lineup
  • Updated Jun 1, 2026

Coverage snapshot

Tracked robots
1
Categories
1
Available now
1
Price view
$190

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Manufacturer brief

What stands out about ELECFREAKS

ELECFREAKS currently spans 1 robot in the ui44 database. The portfolio leans toward research with 1 model leading the lineup. 1 model is already available or active today. Published pricing starts at $190.

6-DOF humanoid-style bionic movementWalking, turning, dancing, and kicking actionsRemote-control operationMakeCode block programming
portfolio

1 Research

ELECFREAKS is most concentrated in research robotics, with 1 category represented overall.

availability

1/1

1 robot is marked available or active, which helps frame how commercial-ready this lineup is.

pricing

$190

The average published price across 1 model lands around $190.

Portfolio

What this manufacturer actually covers

ELECFREAKS needs an at-a-glance summary before the page branches into deeper editorial content. This chapter brings the company snapshot, compare entry points, and model gallery into one clean first read.

About ELECFREAKS

ELECFREAKS is a robotics company headquartered in China. The company currently has 1 robot tracked in the ui44 Home Robot Database, spanning the Research category.

Key Capabilities

6-DOF humanoid-style bionic movement Walking, turning, dancing, and kicking actions Remote-control operation MakeCode block programming Python text programming Ultrasonic obstacle avoidance Maze-style exploration lessons Rhythm-following dance interaction Gesture-sensor interaction Self-balancing head behavior +5 more

At a Glance

Robots Tracked

1 model

Category

Research

Headquarters

China

Available Now

1 robot

Price

$190

Browse all robotics companies on the manufacturers directory, or explore robots from China.

ELECFREAKS Robot

Model coverage

The tracked ELECFREAKS robot is grouped here so the catalog can be scanned quickly before diving deeper into pricing, specs, and context.

Browse the full robot directory
Product and tech

Lineup structure and platform signals

A premium manufacturer page should make it easy to understand how the lineup is organized and what technical patterns show up across the portfolio, not just list robots one by one.

Technology & Capabilities

ELECFREAKS's robots combine a range of technologies and capabilities. Here is a consolidated look at the sensors, connectivity, AI platforms, and capabilities found across their product line.

Key Capabilities

  • 6-DOF humanoid-style bionic movement 1/1 (100%)
  • Walking, turning, dancing, and kicking actions 1/1 (100%)
  • Remote-control operation 1/1 (100%)
  • MakeCode block programming 1/1 (100%)
  • Python text programming 1/1 (100%)
  • Ultrasonic obstacle avoidance 1/1 (100%)
  • Maze-style exploration lessons 1/1 (100%)
  • Rhythm-following dance interaction 1/1 (100%)
  • Gesture-sensor interaction 1/1 (100%)
  • Self-balancing head behavior 1/1 (100%)

+ 5 more

Sensor Technology

  • Ultrasonic sensor 1/1 (100%)
  • Gesture sensor 1/1 (100%)
  • Microphone 1/1 (100%)

Connectivity

  • Dedicated remote controller 1/1 (100%)
  • Programmable micro:bit control 1/1 (100%)
  • GPIO expansion 1/1 (100%)
  • IIC expansion 1/1 (100%)

AI & Intelligence

Educational rule-based behavior stack with ultrasonic obstacle sensing, rhythm-following microphone interaction, balance/stability behavior, preset action programs, and MakeCode/Python programmability; no LLM or cloud assistant is officially disclosed.
Commercial reality

Pricing, availability, and hard specs

Decision-making gets easier when pricing, availability, and comparable specs are presented as a coherent buying surface instead of disconnected blocks.

Pricing & Availability

$190

Listed price

1/1

Available now

ELECFREAKS robots are priced at $190.

Evaluation

Buyer guidance and plain-language spec decoding

This section translates the raw database into practical evaluation advice, which helps the page feel like expert editorial rather than a raw export.

Buying Guide: Is a ELECFREAKS Robot Right for You?

Choosing the right robot depends on your use case, budget, and technical needs. Here's what to consider when evaluating ELECFREAKS's product line.

Who Should Consider ELECFREAKS Robots

Consumer Buyers

If you're a home user or small business looking for an off-the-shelf robot, ELECFREAKS has consumer-priced options starting at $190. These models typically ship directly and don't require enterprise contracts.

Key Factors to Evaluate

Availability

1 of 1 models are currently available. Check individual robot pages for the latest status.

Category Fit

Make sure the robot's category matches your primary use case. Browse all categories.

Sensor Ecosystem

Review the technology section to understand what sensing and connectivity each model offers.

Price Transparency

1 of 1 models list public pricing. For unlisted models, request quotes early.

Ecosystem Compatibility

Some ELECFREAKS robots integrate with third-party platforms. Check compatibility on each robot's page.

Compare Before You Buy

Evaluate ELECFREAKS robots head-to-head or against competitors with our comparison tool.

Compare robots →

ELECFREAKS Specifications Explained

Raw numbers only tell part of the story. Here is a plain-language explanation of what each specification means for the ELECFREAKS robot — and what it means for you as a buyer or researcher.

micro:bit PU Robot Kit

Specifications Breakdown

Height

16 cm

At just 16 cm tall, the micro:bit PU Robot Kit has a compact form factor that allows it to navigate under furniture, access tight spaces, and maintain a low profile during operation. Compact robots are particularly effective for cleaning, surveillance, and utility tasks.

Weight

300 g robot body; 720 g complete kit

Weighing 300 g robot body; 720 g complete kit, the micro:bit PU Robot Kit is a substantial machine. This weight provides stability during physical tasks and manipulation but means it requires careful consideration for floor loading and may need dedicated charging infrastructure. Industrial-weight robots typically offer higher payload capacity and more robust construction.

Battery Life

Approx. 20 minutes depending on usage mode

The micro:bit PU Robot Kit offers Approx. 20 minutes depending on usage mode of battery life per charge. Battery life is one of the most critical real-world performance metrics for any mobile robot. It determines how much work the robot can accomplish in a single session before needing to recharge. For research robots, this runtime should be evaluated against the size of the area you need covered and the intensity of the tasks involved. Robots with self-charging capability can partially compensate for shorter battery life by autonomously returning to their dock.

Charging Time

Approx. 20-30 minutes

The micro:bit PU Robot Kit requires Approx. 20-30 minutes to reach a full charge. Charging time directly impacts the robot's daily operating capacity — faster charging means less downtime and more productive hours. Combined with its battery life, the charge-to-runtime ratio reveals how much of each day the robot can actually spend working versus sitting on its dock.

Max Speed

Not officially disclosed

The micro:bit PU Robot Kit can move at up to Not officially disclosed. Maximum speed affects how quickly the robot can traverse its operating area, respond to commands, and complete tasks. For research robots, speed must be balanced against safety — faster robots need better obstacle detection and stopping capabilities to prevent collisions and ensure safe operation around people and pets.

AI Platform

Educational rule-based behavior stack with ultrasonic obstacle sensing, rhythm-following microphone interaction, balance/stability behavior, preset action programs, and MakeCode/Python programmability; no LLM or cloud assistant is officially disclosed.

The micro:bit PU Robot Kit runs on Educational rule-based behavior stack with ultrasonic obstacle sensing, rhythm-following microphone interaction, balance/stability behavior, preset action programs, and MakeCode/Python programmability; no LLM or cloud assistant is officially disclosed. for its artificial intelligence capabilities. The AI platform determines how intelligently the robot behaves — from basic reactive responses to sophisticated scene understanding, natural language processing, and adaptive learning. A more advanced AI platform generally means better obstacle avoidance, more natural interaction, and the ability to improve performance over time through software updates.

Dimensions: 12 x 11 x 16 cm

Affects doorway clearance and operating space requirements

Sourced from official ELECFREAKS docs · Full micro:bit PU Robot Kit specs →

Market context

Use cases and category landscape

A strong manufacturer page should explain where the lineup fits in the broader robotics market, including who these robots are for and how the surrounding category is moving.

Real-World Use Cases for ELECFREAKS Robots

Understanding how a robot fits into your specific situation is more important than any single specification. Here are the real-world scenarios where ELECFREAKS robots can make a meaningful impact.

Research and Education Platform

Academic and research teams need robot platforms that offer deep programmability, well-documented APIs, and active community support.

  • Research robots should provide access to raw sensor data, support standard robotics frameworks (ROS/ROS2), and offer simulation environments for algorithm development before deploying on hardware.
  • Consider the platform's track record in published research, available documentation, and whether the manufacturer provides academic pricing or grants.

Child Education and Development

Educational robots help children develop STEM skills, coding literacy, and social interaction capabilities.

  • The best educational robots combine engaging personality with genuine learning outcomes, offering age-appropriate programming interfaces and curriculum-aligned content.
  • Consider the robot's content library, parental controls, screen-time management features, and whether it offers progressive learning paths that grow with the child.

Not sure which type of robot fits your needs? Browse our categories guide or use the comparison tool to evaluate options side-by-side.

ELECFREAKS in the Robotics Industry

ELECFREAKS operates in the research robotics segment.

Research Market Landscape

Market Overview

Research robots serve as platforms for advancing the science of robotics, AI, and human-robot interaction. Used in universities, government labs, and corporate R&D departments, these robots prioritize flexibility, programmability, and access to low-level control over commercial polish. Many concepts proven on research platforms eventually find their way into consumer and commercial products.

ELECFREAKS competes in this space with micro:bit PU Robot Kit.

Key Industry Trends

Open-source hardware and software platforms accelerating collaborative research
Simulation-to-reality transfer learning reducing physical prototyping needs
Shared benchmark environments enabling fair comparison of research results
Cross-disciplinary collaboration between robotics, AI, and cognitive science
Increasing focus on safe human-robot interaction and ethical AI

Common Use Cases for Research Robots

Locomotion and manipulation research Human-robot interaction studies AI and machine learning algorithm development Multi-robot coordination experiments Assistive technology research and development

Buyer Considerations

Programmability and API access for custom research applications
Community size and support for the platform
Availability of simulation environments and digital twins
Modularity for attaching custom sensors and actuators
Publication and citation history demonstrating research utility

Future Outlook

Research robotics is becoming more accessible through lower-cost platforms and better simulation tools. The line between research and commercial robots is blurring as companies release developer editions of commercial products. Cloud robotics and shared datasets will accelerate the pace of discovery.

Systems

Capabilities, sensors, and connectivity

For serious buyers and researchers, the important question is how the stack hangs together: capabilities, sensing, and integration depth all need to read as a coherent system.

Sensor Technology in ELECFREAKS Robots

Sensors are the eyes, ears, and sense of touch that allow robots to perceive and interact with the world. ELECFREAKS's robot uses 3 different sensor types. Here is a detailed explanation of each sensor technology, how it works, and its role in robotics.

Ultrasonic sensor

Used in 1 model

Sound-based proximity sensors that emit high-frequency sound waves and measure the echo to detect nearby objects.

How it works

The sensor emits ultrasonic pulses (typically 40kHz) and times how long the echo takes to return. This provides reliable short-range distance measurement, typically from 2cm to 4 meters.

In robotics

Ultrasonic sensors are cost-effective close-range obstacle detectors, commonly used for wall-following, cliff detection (preventing falls off stairs), and detecting glass or transparent surfaces that optical sensors may miss.

Microphone

Used in 1 model

Audio input sensors that capture sound for voice command recognition, source localization, and environmental audio monitoring.

How it works

Microphone arrays use multiple elements with beamforming algorithms to isolate sound sources, reduce noise, and determine where sounds originate from in 3D space.

In robotics

Microphones enable voice interaction, sound-based event detection (glass breaking, doorbells, alarms), and spatial audio awareness. Array configurations improve performance in noisy environments.

Learn more about robot sensors and components in our components directory or read the components glossary.

Connectivity & Smart Home Integration

How a robot connects to your network and integrates with your existing smart home determines how useful it will be in practice. ELECFREAKS's robot supports 4 connectivity technologies, and third-party integrations.

Third-Party Compatibility

BBC micro:bit ecosystemMicrosoft MakeCodePython text programmingELECFREAKS PU Robot wiki curriculumLEGO-compatible building blocksGPIO/IIC expansion modules2 x AAA batteries for the remote controller

Learn more about robot connectivity options in our connectivity components guide or browse the full components directory.

Positioning

Competitive posture and regional context

Manufacturer research is stronger when the page moves beyond specs and helps frame strategic position, regional ecosystem, and how the portfolio sits versus peers.

How ELECFREAKS Compares in the Market

How ELECFREAKS positions itself in the competitive landscape — beyond individual products.

Price positioning: ELECFREAKS competes in the consumer-friendly segment with an average price point of $190, making their robots accessible to individual buyers and small businesses. This positions them as a value-oriented option in the market.

Category focus: ELECFREAKS is a specialist focused entirely on the research category. Category specialists often develop deeper expertise and more refined products in their focus area compared to multi-category companies that spread their R&D across different robot types.

Technology breadth: Across its product line, ELECFREAKS integrates 3 unique sensor types and 15 distinct capabilities. This technology stack determines the range of tasks and environments their robots can handle, and indicates the depth of the company's engineering investment.

Geographic context: Based in China, ELECFREAKS benefits from its country's robotics ecosystem and talent pool. Regional context can affect pricing, availability, support quality, and regulatory compliance in different markets.

Market maturity: All 1 of ELECFREAKS's robot is commercially available, indicating a mature product portfolio focused on serving current customer needs.

Compare Side by Side

Use the comparison tool or browse the manufacturers directory.

Robotics in China: Where ELECFREAKS Comes From

China has emerged as a robotics superpower, with massive investment in both industrial and consumer robotics.

Companies like Unitree, Xiaomi, and UBTECH are making humanoid and quadruped robots accessible at unprecedented price points. The Chinese government's 'Made in China 2025' and subsequent policies explicitly target robotics as a strategic industry, with goals to become the world's largest producer and consumer of robots. Shenzhen's hardware ecosystem enables rapid prototyping and manufacturing at scale.

ELECFREAKS contributes to China's robotics landscape with 1 model in the research category.

Key Strengths of the China Robotics Ecosystem

Unmatched manufacturing scale and speed, reducing hardware costs dramatically

Government industrial policy actively promoting robotics development and adoption

Shenzhen's hardware ecosystem enabling rapid iteration from prototype to product

Large domestic market creating demand and generating real-world deployment data

Growing AI research capability with competitive talent from top Chinese universities

Operations

Ownership planning and final takeaways

The page should close with practical ownership guidance, supporting editorial, and a concise summary so the route ends with momentum instead of fatigue.

Owning a ELECFREAKS Robot: What to Expect

Purchasing a robot is the start of an ongoing relationship with technology that requires setup, maintenance, and periodic attention.

Setting Up Your Robot

First-time robot setup varies significantly by category and complexity. Consumer robots like vacuums and lawn mowers typically involve downloading a companion app, connecting to Wi-Fi, and running an initial mapping or boundary setup routine. More complex robots like humanoids or quadrupeds may require professional installation, calibration, and training. Allow extra time for the first session — the robot needs to learn your space, and you need to learn its controls. Most modern robots improve their performance over the first few uses as their maps and AI models refine based on your specific environment.

Ongoing Maintenance Requirements

Every robot requires some level of maintenance to operate at peak performance. For cleaning robots, this includes emptying dustbins, washing filters, replacing brush rolls, and cleaning sensors — typically a few minutes per week. Lawn mowing robots need periodic blade replacements and seasonal cleaning. Legged robots may require joint lubrication and firmware updates. Check the manufacturer's recommended maintenance schedule and factor replacement part costs into your total cost of ownership. Establishing a regular maintenance routine significantly extends the robot's useful life and maintains cleaning or task performance over time.

Software Updates and Long-Term Support

Modern robots receive regular software updates that can add features, improve navigation, fix bugs, and enhance security. When evaluating any robot, consider the manufacturer's track record for software support — how frequently do they release updates, and for how long do they support older models? Some companies provide updates for years after purchase, while others may discontinue support sooner. Cloud-dependent features are particularly important to evaluate: if the manufacturer shuts down cloud services, will your robot still function? Prefer robots with strong local processing capability for long-term reliability.

Safety Considerations

Robot safety encompasses both physical safety (preventing collisions, falls, and injuries) and digital safety (data privacy, network security, camera access). Physically, look for robots with emergency stop mechanisms, collision detection, cliff sensors, and speed-limiting features when operating near people or pets. Digitally, understand what data the robot collects, where it is stored, who can access it, and whether the manufacturer has a clear privacy policy. For robots with cameras and microphones, hardware privacy indicators (LED lights when recording) and physical mute switches provide important transparency and control.

Warranty and After-Sales Support

Robotics purchases represent significant investments, making warranty terms and after-sales support critical evaluation criteria. Standard warranties in the industry range from one to three years, with some manufacturers offering extended warranty options. Beyond warranty length, consider what the warranty covers — some exclude consumable parts like brushes and filters. Also evaluate the manufacturer's service infrastructure: do they have authorized repair centers in your region? Is support available by phone, email, or chat? Response times and repair turnaround times can vary significantly between companies. User community forums and third-party repair guides can supplement official support.

Total Cost of Ownership

The sticker price of a robot is just the beginning. Total cost of ownership includes the initial purchase price, replacement parts and consumables, electricity for charging, any subscription fees for cloud or premium features, and potential repair costs. For commercial robots, add integration, training, and downtime costs. For consumer robots, factor in accessories like extra mop pads, replacement brushes, or boundary accessories. A thorough TCO analysis over the expected product lifetime — typically three to five years for consumer robots and longer for commercial platforms — provides a much more accurate picture of value than purchase price alone.

For model-specific ownership details, visit individual robot pages or contact ELECFREAKS directly.

Deployment Planning for ELECFREAKS Robots

Successful robot deployment depends on preparation that goes well beyond selecting the right model.

Readiness Assessment

At least one ELECFREAKS model carries an available or active status, indicating that procurement conversations can proceed with current product specifications rather than pre-release estimates.
Published pricing exists for 1 model, which supports early budget planning. Verify whether listed prices include integration support, training, and warranty coverage.
With 15 distinct capabilities documented across the product line, ELECFREAKS robots offer a broad feature surface. Prioritize capabilities that directly map to your operational requirements and treat additional features as secondary evaluation criteria.
1
Laboratory and research environment preparation

Research deployments require controlled conditions that differ from commercial settings. Verify that the lab space meets the robot's power requirements, including dedicated circuits for charging stations and any auxiliary computing hardware. Plan for motion capture or external sensor arrays if your research protocol requires ground-truth positioning data. Establish clear demarcation between the robot's active workspace and personnel areas, especially for platforms with manipulator arms or high-speed locomotion capabilities. Document the software development environment requirements, including supported operating systems, SDK dependencies, and network configurations needed for remote operation and data collection.

2
Network infrastructure and cybersecurity planning

Modern robots are networked devices that require thoughtful integration with existing IT infrastructure. Plan a dedicated network segment or VLAN for robot operations to isolate robot traffic from critical business systems. Implement certificate-based authentication where supported, and verify that firmware update mechanisms use signed packages. Establish a security review cadence for robot software components, especially for robots that process camera feeds, microphone input, or personal data. Create an incident response plan specific to robot compromise scenarios — what happens if a robot's navigation system is tampered with, or if sensor data is intercepted? These questions are easier to answer before deployment than during an active incident.

3
Operator training and workflow integration

Even highly autonomous robots require human operators who understand normal behavior, can recognize anomalies, and know when and how to intervene. Develop a training program that covers daily operations (startup, shutdown, charging), routine maintenance (cleaning sensors, checking mechanical wear), and emergency procedures (manual override, safe power-down, physical recovery from stuck positions). Integrate robot operations into existing workflow documentation so that robot tasks and human tasks have clear handoff points. Track operator confidence levels over time and provide refresher training when procedures change or new capabilities are deployed through software updates.

4
Performance benchmarking and acceptance criteria

Define measurable success criteria before the robot arrives. For cleaning robots, this might be coverage percentage and cleaning quality scores. For commercial service robots, track task completion rates, customer interaction quality, and mean time between interventions. For research platforms, establish reproducibility metrics and data quality thresholds. Having objective benchmarks prevents the common failure mode where a robot is judged impressive in demos but disappointing in sustained operation. Create a 30-60-90 day evaluation framework with specific milestones at each stage, and define clear decision points for scaling up, adjusting configuration, or discontinuing the deployment.

5
Long-term maintenance and total cost modeling

The purchase price of a robot is typically a fraction of the total cost of ownership over its operational lifetime. Model the full cost picture including consumables (filters, brushes, wheels, batteries), scheduled maintenance (sensor calibration, actuator inspection, firmware updates), unscheduled repairs (motor replacement, sensor failure, structural damage), and operational costs (electricity, network bandwidth, operator time). Request maintenance schedules and spare-part pricing from the manufacturer before purchase. For commercial deployments, calculate the break-even point against the labor or service cost the robot replaces, factoring in realistic uptime assumptions rather than manufacturer-stated maximums. Revisit the cost model quarterly as real operating data replaces initial estimates.

Deployment planning is iterative — capture lessons learned and refine your approach as you progress with ELECFREAKS products.

ELECFREAKS: Summary and Key Takeaways

ELECFREAKS is a China-based robotics company with 1 robot tracked on ui44, focused on research robotics
Their robots integrate 3 sensor types, 15 capabilities, and 4 connectivity options across the product line
All 1 model is currently available for purchase or deployment, priced at $190
Key sensor technologies include Ultrasonic sensor, Gesture sensor, Microphone
Notable capabilities span 6-dof humanoid-style bionic movement, walking, turning, dancing, and kicking actions, remote-control operation, makecode block programming, and 11 additional features

Next Steps

Frequently Asked Questions

What robots does ELECFREAKS make?
ELECFREAKS has 1 robot in the ui44 database: micro:bit PU Robot Kit. These span the Research category.
Where is ELECFREAKS headquartered?
ELECFREAKS is headquartered in China. Browse all manufacturers from China or explore the complete manufacturers directory.
How much do ELECFREAKS robots cost?
ELECFREAKS robots with published pricing range from $190 to $190. See the full pricing breakdown above.
Can I buy a ELECFREAKS robot today?
Yes — 1 ELECFREAKS model is currently available or actively deployed: micro:bit PU Robot Kit (Available). Check each robot's page for the latest purchasing details.
What can ELECFREAKS robots do?
Across their product line, ELECFREAKS robots offer 15 distinct capabilities including: 6-DOF humanoid-style bionic movement, Walking, turning, dancing, and kicking actions, Remote-control operation, MakeCode block programming, Python text programming, Ultrasonic obstacle avoidance, Maze-style exploration lessons, Rhythm-following dance interaction, and 7 more. See each robot's detail page for the full capability breakdown.
What sensors do ELECFREAKS robots use?
ELECFREAKS robots use 3 types of sensors including Ultrasonic sensor, Gesture sensor, Microphone. Visit the components directory to see how these compare across the industry.
How current is the ELECFREAKS data on ui44?
All robot data on ui44 is periodically verified against manufacturer sources. The most recent verification for a ELECFREAKS robot was on 2026-06-01. Each robot page includes a "last verified" date so you can gauge data freshness.

Data Integrity

All ELECFREAKS robot data on ui44 is verified against official manufacturer sources, spec sheets, and press releases. Most recent verification: 2026-06-01. If you notice outdated or incorrect data, please let us know — accuracy is our top priority.

Explore the database

Go beyond the spec sheet

Full specifications, side-by-side comparisons, and buyer guides for every robot.